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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Deuterium retention and release in tungsten co-deposited layers
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Deuterium retention and release in tungsten co-deposited layers

机译:氘在钨共沉积层中的保留和释放

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摘要

A systematic study of the influence of the deposition conditions on the deuterium retention in co-deposited tungsten layers formed both by magnetron sputtering and in the PISCES-B linear device has been carried out. Experimental parameters such as the tungsten deposition rate, the incident particle energy and the substrate temperature are shown to affect the level of deuterium retention in the layers. A decreased retention for increased substrate temperature and deposition rates, and an increased retention for increasing incident deuterium particle energy are observed. A scaling equation is proposed to describe the influence of the conditions during the co-deposition process (surface temperature, incident particle energy and deposition flux) on the deuterium retention. In addition, the desorption kinetics of deuterium has been studied by TDS. Two desorption stages at 473-573 K and at 1073 K have been observed.
机译:系统地研究了沉积条件对通过磁控溅射和PISCES-B线性器件形成的共沉积钨层中氘保留的影响。实验参数如钨沉积速率,入射粒子能量和衬底温度显示出会影响氘在层中的保留水平。观察到保留时间减少,以提高衬底温度和沉积速率,保留时间增加,以增加入射氘粒子的能量。提出了一个比例方程来描述共沉积过程中的条件(表面温度,入射粒子能量和沉积通量)对氘保留的影响。此外,TDS还研究了氘的解吸动力学。已经观察到在473-573 K和1073 K下有两个解吸阶段。

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